Muscle weakness and dysfunction are common problems in patients hospitalized in the intensive care unit. Respiratory muscle weakness during mechanical ventilation was recognized a state of muscular fatigue. The terminology 'ventilator-induced diaphragmatic dysfunction' (VIDD) originally was introduced to describe these effects of mechanical ventilation and respiratory muscle unloading on the diaphragm. Ultrasonography is becoming increasingly popular management of ICU patients. It is a simple, non-invasive and safe imaging technique that can be used for the assessment of distinctive diaphragmatic characteristics. Parameters such as amplitude and velocity of contraction, which can be assessed using M-mode ultrasound. In addition, static and dynamic (thickening fraction during inspiration) diaphragmatic thickness can also be measured by ultrasonography.
The aim of this study is to evaluate the effect of different modes of mechanical ventilation on diaphragmatic thickness using ultrasonography and the relation between time of mechanical ventilation and the percentage of change of diaphragmatic thickness in head trauma patients subjected for mechanical ventilation (\>2 days) intensive care unit. Modes of ventilation will be used in the study are: * Pressure controlled mandatory ventilation mode (P-CMV). * Pressure synchronized intermittent mandatory ventilation mode (P-SIMV). * Pressure support (PS) mode.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
OTHER
Masking
SINGLE
Enrollment
93
Pressure controlled mandatory ventilation mode (P-CMV)
Pressure synchronized intermittent mandatory ventilation
Pressure support mode (PS)
Mansoura University, Faculty of Medicine
Al Mansurah, DK, Egypt
Diaphragmatic thickness
changes in diaphragmatic thickness from baseline to nadir
Time frame: for 3 weeks after initiation of mechanical ventilation
The relation between time of mechanical ventilation and the percentage of change of diaphragmatic thickness
measurement of the diaphragmatic thickness as usual and calculate the percentage of change of the diaphragmatic thickness over the time of mechanical ventilation
Time frame: for 3 weeks after initiation of mechanical ventilation
Glasgow coma scale (GCS)
Time frame: for 2 weeks after initiation of mechanical ventilation.
Sequential organ failure assessment (SOFA) score
Time frame: for 3 weeks after admission to the ICU
Complete blood picture
Time frame: for 3 weeks after admission to the ICU
Coagulation profile
Time frame: for 3 weeks after admission to the ICU
Liver function
Time frame: for 3 weeks after admission to the ICU
Renal function tests
Time frame: for 3 weeks after admission to the ICU
Mean blood pressure
Time frame: for 3 weeks after admission to the ICU
Heart rate
Time frame: for 3 weeks after admission to the ICU
Arterial Oxygen Saturation
Time frame: for 3 weeks after admission to the ICU
Central Venous Pressure
Time frame: for 3 weeks after admission to the ICU
temperature
Time frame: for 3 weeks after admission to the ICU
mode of ventilation
Time frame: for 3 weeks after initiation of mechanical ventilation
tidal volume
Time frame: for 3 weeks after initiation of mechanical ventilation
respiratory rate
Time frame: for 3 weeks after initiation of mechanical ventilation
airway pressure
peak and mean airway pressure
Time frame: for 3 weeks after initiation of mechanical ventilation
ICU stay
Time from admission to the ICU untill discharge or death
Time frame: for 3 weeks after initiation of mechanical ventilation
Duration of mechanical ventilation
time from initiation of mechanical ventilation till extubation or death
Time frame: for 3 weeks after initiation of mechanical ventilation
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